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Cristall chemistry --- fysicochemie --- Geochemistry --- Metal sulphides --- Metal sulfides --- 549.3 --- 546.221 --- 669.017 --- 52-55 --- Metallic sulfides --- Sulfides --- Sulphides. Sulpho-salts --- Hydrogen sulphide and its derivatives. Sulphides --- Physical metallurgy of individual metals --- Stability. Equilibrium --- 52-55 Stability. Equilibrium --- 669.017 Physical metallurgy of individual metals --- 546.221 Hydrogen sulphide and its derivatives. Sulphides --- 549.3 Sulphides. Sulpho-salts --- Metal sulfides. --- Crystal chemistry --- Chimie minerale --- Structure cristalline (solides) --- Sulfure
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This book presents recent advances in inorganic nanomaterials for healthcare, with focus on the synthesis, medical applications and toxicity of metals, metal oxides and metal sulfides. Major applications include diagnosis, bioimaging, biosensing, healing and therapy in cancer, diabetes, cardiovascular diseases, obesity, metabolic syndrome, dentistry and antimicrobials.
Biophysics. --- Biological physics. --- Materials science. --- Biomedical engineering. --- Medicine. --- Biological and Medical Physics, Biophysics. --- Materials Science, general. --- Biomedical Engineering and Bioengineering. --- Biomedicine, general. --- Health Workforce --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Material science --- Physical sciences --- Biological physics --- Biology --- Medical sciences --- Physics --- Alloys. --- Metal sulfides. --- Metallic oxides. --- Metal oxides --- Metals --- Oxides --- Metal sulphides --- Metallic sulfides --- Sulfides --- Metallic alloys --- Metallic composites --- Phase rule and equilibrium --- Amalgamation --- Microalloying
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Jonathan Scragg documents his work on a very promising material suitable for use in solar cells. Copper Zinc Tin Sulfide (CZTS) is a low cost, earth-abundant material suitable for large scale deployment in photovoltaics. Jonathan pioneered and optimized a low cost route to this material involving electroplating of the three metals concerned, followed by rapid thermal processing (RTP) in sulfur vapour. His beautifully detailed RTP studies – combined with techniques such as XRD, EDX and Raman – reveal the complex relationships between composition, processing and photovoltaic performance. This exceptional thesis contributes to the development of clean, sustainable and alternative sources of energy.
Scots pine -- Physiology. --- Superoxide dismutase. --- Physics --- Chemistry --- Physical Sciences & Mathematics --- Atomic Physics --- Physical & Theoretical Chemistry --- Photovoltaic power generation. --- Solar cells. --- Thin films. --- Metal sulfides. --- Metal sulphides --- Metallic sulfides --- Films, Thin --- Solid film --- Cells, Solar --- Photovoltaic energy conversion --- Photovoltaics --- Chemistry. --- Renewable energy resources. --- Electrochemistry. --- Surfaces (Physics). --- Interfaces (Physical sciences). --- Renewable energy sources. --- Alternate energy sources. --- Green energy industries. --- Metals. --- Metallic Materials. --- Renewable and Green Energy. --- Surface and Interface Science, Thin Films. --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films --- Sulfides --- Direct energy conversion --- Photovoltaic cells --- Solar batteries --- Solar energy --- Materials. --- Alternate energy sources --- Alternative energy sources --- Energy sources, Renewable --- Sustainable energy sources --- Power resources --- Renewable natural resources --- Agriculture and energy --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Physical sciences --- Materials --- Surface chemistry --- Surfaces (Physics) --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Chemistry, Physical and theoretical
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